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Vychisl. Metody Programm., 2010, Volume 11, Issue 4, Pages 306–312 (Mi vmp323)  

This article is cited in 1 scientific paper (total in 1 paper)

Вычислительные методы и приложения

Simulation of in-situ combustion front dynamics

N. E. Gracheva, A. V. Dmitrievb, D. S. Senina, V. T. Volkovb, N. N. Nefedovb

a The All Russian Oil and Gas Scientific-Research Institute after Academician A. P. Krylov, Moscow
b Lomonosov Moscow State University, Faculty of Physics

Abstract: The dynamics of sharp transition layers in the reaction-diffusion-advection model is numerically studied. The mathematical model qualitatively describes the motion of an oxidizer for the thermogas method of enhanced oil recovery. The influence of permeability heterogeneity on the front shape is considered. The simulation results are compared with the numerical data obtained with the use of the CMG STARS thermohydrodynamic simulator.

Keywords: reaction-diffusion-advection equation; asymptotic methods; in-situ combustion front

Full text: PDF file (1368 kB)
UDC: 519.633

Citation: N. E. Grachev, A. V. Dmitriev, D. S. Senin, V. T. Volkov, N. N. Nefedov, “Simulation of in-situ combustion front dynamics”, Vychisl. Metody Programm., 11:4 (2010), 306–312

Citation in format AMSBIB
\Bibitem{GraDmiSen10}
\by N.~E.~Grachev, A.~V.~Dmitriev, D.~S.~Senin, V.~T.~Volkov, N.~N.~Nefedov
\paper Simulation of in-situ combustion front dynamics
\jour Vychisl. Metody Programm.
\yr 2010
\vol 11
\issue 4
\pages 306--312
\mathnet{http://mi.mathnet.ru/vmp323}


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    Citing articles on Google Scholar: Russian citations, English citations
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    This publication is cited in the following articles:
    1. N. T. Levashova, N. N. Nefedov, A. V. Yagremtsev, “Existence of a solution in the form of a moving front of a reaction-diffusion-advection problem in the case of balanced advection”, Izv. Math., 82:5 (2018), 984–1005  mathnet  crossref  crossref  adsnasa  isi  elib
  • Vychislitel'nye Metody i Programmirovanie
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